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The adipokine leptin modulates adventitial pericyte functions by autocrine and paracrine signalling

机译:脂肪因子瘦素通过自分泌和旁分泌信号传导调节外膜周细胞功能

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摘要

Transplantation of adventitial pericytes (APCs) improves recovery from tissue ischemia in preclinical animal models by still unknown mechanisms. This study investigates the role of the adipokine leptin (LEP) in the regulation of human APC biological functions. Transcriptomic analysis of APCs showed components of the LEP signalling pathway are modulated by hypoxia. Kinetic studies indicate cultured APCs release high amounts of immunoreactive LEP following exposure to hypoxia, continuing upon return to normoxia. Secreted LEP activates an autocrine/paracrine loop through binding to the LEP receptor (LEPR) and induction of STAT3 phosphorylation. Titration studies using recombinant LEP and siRNA knockdown of LEP or LEPR demonstrate the adipokine exerts important regulatory roles in APC growth, survival, migration and promotion of endothelial network formation. Heterogeneity in LEP expression and secretion may influence the reparative proficiency of APC therapy. Accordingly, the levels of LEP secretion predict the microvascular outcome of APCs transplantation in a mouse limb ischemia model. Moreover, we found that the expression of the Lepr gene is upregulated on resident vascular cells from murine ischemic muscles, thus providing a permissive milieu to transplanted LEP-expressing APCs. Results highlight a new mechanism responsible for APC adaptation to hypoxia and instrumental to vascular repair.
机译:外膜周细胞(APC)的移植通过尚不清楚的机制改善了临床前动物模型中组织缺血的恢复。这项研究调查了脂肪因子瘦素(LEP)在调节人类APC生物学功能中的作用。 APC的转录组学分析显示LEP信号通路的组成部分受缺氧的调节。动力学研究表明,培养的APC在暴露于缺氧后会释放大量的免疫反应性LEP,并在恢复常氧后继续释放。分泌的LEP通过与LEP受体(LEPR)结合并诱导STAT3磷酸化来激活自分泌/旁分泌环。使用重组LEP的滴定研究和LEP或LEPR的siRNA敲低表明,脂肪因子在APC的生长,存活,迁移和促进内皮网络形成中起着重要的调节作用。 LEP表达和分泌的异质性可能会影响APC治疗的修复能力。因此,LEP分泌水平预测了小鼠肢体缺血模型中APC移植的微血管结局。此外,我们发现Lepr基因的表达在鼠缺血性肌肉的驻留血管细胞上被上调,从而为表达LEP的APCs的移植提供了环境。结果强调了一种新的机制,该机制负责APC适应缺氧并有助于修复血管。

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